Faculty of Engineering and Applied Science, University of Regina, Regina, Saskatchewan, Canada S4S 0A2.
Sci Total Environ. 2013 Jan 1;442:515-26. doi: 10.1016/j.scitotenv.2012.10.028. Epub 2012 Nov 29.
A scenario-based interval two-phase fuzzy programming (SITF) method was developed for water resources planning in a wetland ecosystem. The SITF approach incorporates two-phase fuzzy programming, interval mathematical programming, and scenario analysis within a general framework. It can tackle fuzzy and interval uncertainties in terms of cost coefficients, resources availabilities, water demands, hydrological conditions and other parameters within a multi-source supply and multi-sector consumption context. The SITF method has the advantage in effectively improving the membership degrees of the system objective and all fuzzy constraints, so that both higher satisfactory grade of the objective and more efficient utilization of system resources can be guaranteed. Under the systematic consideration of water demands by the ecosystem, the SITF method was successfully applied to Baiyangdian Lake, which is the largest wetland in North China. Multi-source supplies (including the inter-basin water sources of Yuecheng Reservoir and Yellow River), and multiple water users (including agricultural, industrial and domestic sectors) were taken into account. The results indicated that, the SITF approach would generate useful solutions to identify long-term water allocation and transfer schemes under multiple economic, environmental, ecological, and system-security targets. It can address a comparative analysis for the system satisfactory degrees of decisions under various policy scenarios. Moreover, it is of significance to quantify the relationship between hydrological change and human activities, such that a scheme on ecologically sustainable water supply to Baiyangdian Lake can be achieved.
基于情景的两阶段模糊规划(SITF)方法被开发用于湿地生态系统中的水资源规划。SITF 方法将两阶段模糊规划、区间数学规划和情景分析纳入一个通用框架中。它可以处理成本系数、资源可用性、水需求、水文条件和多水源供应、多部门消费背景下的其他参数方面的模糊和区间不确定性。SITF 方法的优势在于能够有效地提高系统目标和所有模糊约束的隶属度,从而保证目标的更高满意度和系统资源的更有效利用。在系统考虑生态系统水需求的基础上,SITF 方法成功应用于华北最大的湿地——白洋淀。考虑了多水源供应(包括岳城水库和黄河的跨流域水源)和多个用水户(包括农业、工业和居民部门)。结果表明,SITF 方法可以生成有用的解决方案,以确定在多个经济、环境、生态和系统安全目标下的长期水资源分配和转移方案。它可以对各种政策情景下的系统满意度决策进行比较分析。此外,量化水文变化与人类活动之间的关系具有重要意义,从而可以实现白洋淀生态可持续供水的方案。